Syaiful Choiri, Nadia Risti Ikka Pertiwi, Diva Amanda Nur Saputri, Syahwa Agustin Rahmawati, Yuliana Sabella Widyasari, Nanang Wiyono, Ilham Kuncahyo
{"title":"用于溃疡性结肠炎治疗的ph靶向和时间释放的槲皮素和番茄红素微粒:基于doe的配方开发,药代动力学和体内概念验证研究。","authors":"Syaiful Choiri, Nadia Risti Ikka Pertiwi, Diva Amanda Nur Saputri, Syahwa Agustin Rahmawati, Yuliana Sabella Widyasari, Nanang Wiyono, Ilham Kuncahyo","doi":"10.1080/1061186X.2025.2561211","DOIUrl":null,"url":null,"abstract":"<p><p>Lycopene (LYC) and quercetin (QRN) exhibit synergistic effects on ulcerative colitis (UC) treatment due to their anti-inflammatory and antioxidant properties. This study aimed to develop a microparticle formulation utilising pH-sensitive and time-release-based polymers, namely Eudragit L and Eudragit RS, respectively, to achieve colon-targeted and controlled-release delivery. Subsequently, pharmacokinetics and UC therapy proof-of-concept studies were conducted. The box-Behnken design was employed to develop and optimise the LYC-QRN microparticles, characterised by particle size and distribution, entrapment efficiency (EE), and drug loading, followed by morphology, molecular, thermal and crystallinity evaluations. The polymers primarily contributed to LYC-QRN encapsulation and loading, while the drug concentration influenced particle size behaviour. The optimised formulation was achieved using 4.10% Eudragit RS, 0.76% Eudragit L, and a drug concentration of 7.82%, resulting in an EE of >50%. QRN and LYC loading were approximately 50 and 25 mg/g, respectively, and the particle size was nearly 1 µm, exhibiting minimal variation. Characterisation demonstrated that the drug in the microparticle dispersed molecularly as an amorphous system, devoid of any chemical interactions. The drug was released at a specific pH-triggering system, enhancing its bioavailability by 3.5-fold. <i>In-vivo</i> evaluation demonstrated that LYC-QRN microparticles effectively cured chronic colon inflammation and protected the gastric mucus layers.</p>","PeriodicalId":15573,"journal":{"name":"Journal of Drug Targeting","volume":" ","pages":"1-13"},"PeriodicalIF":3.9000,"publicationDate":"2025-09-25","publicationTypes":"Journal Article","fieldsOfStudy":null,"isOpenAccess":false,"openAccessPdf":"","citationCount":"0","resultStr":"{\"title\":\"pH-targeted and time-released microparticles of quercetin and lycopene for ulcerative colitis treatment: DoE-based formulation development, pharmacokinetics, and <i>in-vivo</i> proof of concept studies.\",\"authors\":\"Syaiful Choiri, Nadia Risti Ikka Pertiwi, Diva Amanda Nur Saputri, Syahwa Agustin Rahmawati, Yuliana Sabella Widyasari, Nanang Wiyono, Ilham Kuncahyo\",\"doi\":\"10.1080/1061186X.2025.2561211\",\"DOIUrl\":null,\"url\":null,\"abstract\":\"<p><p>Lycopene (LYC) and quercetin (QRN) exhibit synergistic effects on ulcerative colitis (UC) treatment due to their anti-inflammatory and antioxidant properties. 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pH-targeted and time-released microparticles of quercetin and lycopene for ulcerative colitis treatment: DoE-based formulation development, pharmacokinetics, and in-vivo proof of concept studies.
Lycopene (LYC) and quercetin (QRN) exhibit synergistic effects on ulcerative colitis (UC) treatment due to their anti-inflammatory and antioxidant properties. This study aimed to develop a microparticle formulation utilising pH-sensitive and time-release-based polymers, namely Eudragit L and Eudragit RS, respectively, to achieve colon-targeted and controlled-release delivery. Subsequently, pharmacokinetics and UC therapy proof-of-concept studies were conducted. The box-Behnken design was employed to develop and optimise the LYC-QRN microparticles, characterised by particle size and distribution, entrapment efficiency (EE), and drug loading, followed by morphology, molecular, thermal and crystallinity evaluations. The polymers primarily contributed to LYC-QRN encapsulation and loading, while the drug concentration influenced particle size behaviour. The optimised formulation was achieved using 4.10% Eudragit RS, 0.76% Eudragit L, and a drug concentration of 7.82%, resulting in an EE of >50%. QRN and LYC loading were approximately 50 and 25 mg/g, respectively, and the particle size was nearly 1 µm, exhibiting minimal variation. Characterisation demonstrated that the drug in the microparticle dispersed molecularly as an amorphous system, devoid of any chemical interactions. The drug was released at a specific pH-triggering system, enhancing its bioavailability by 3.5-fold. In-vivo evaluation demonstrated that LYC-QRN microparticles effectively cured chronic colon inflammation and protected the gastric mucus layers.
期刊介绍:
Journal of Drug Targeting publishes papers and reviews on all aspects of drug delivery and targeting for molecular and macromolecular drugs including the design and characterization of carrier systems (whether colloidal, protein or polymeric) for both vitro and/or in vivo applications of these drugs.
Papers are not restricted to drugs delivered by way of a carrier, but also include studies on molecular and macromolecular drugs that are designed to target specific cellular or extra-cellular molecules. As such the journal publishes results on the activity, delivery and targeting of therapeutic peptides/proteins and nucleic acids including genes/plasmid DNA, gene silencing nucleic acids (e.g. small interfering (si)RNA, antisense oligonucleotides, ribozymes, DNAzymes), as well as aptamers, mononucleotides and monoclonal antibodies and their conjugates. The diagnostic application of targeting technologies as well as targeted delivery of diagnostic and imaging agents also fall within the scope of the journal. In addition, papers are sought on self-regulating systems, systems responsive to their environment and to external stimuli and those that can produce programmed, pulsed and otherwise complex delivery patterns.